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Robust Adaptive Wideband Beamforming Against Direction and Sensor Location Errors

机译:针对方向和传感器位置误差的鲁棒自适应宽带波束成形

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摘要

The performance of the existing robust beamformers can be still degraded by the bias between the nominal steering vector and the actual one. In this paper, a novel robust wideband beamformer based on the time-frequency distributions is proposed, which can estimate the steering vector accurately even in the presence of direction and sensor location errors. Firstly, it develops an approach for wideband signals to select the single-source auto-source time-frequency (TF) points of the source signals. Then these TF points are utilized to obtain the steering vectors without using the perturbed array manifold and direction information. Finally, a higher output signal-to-interference-plus-noise ratio (SINR) is achieved for the minor bias between the estimated steering vectors and the actual ones. Simulation results demonstrate that the proposed algorithm outperforms other conventional robust beamforming approaches and can achieve high output SINR close to the ideal beamformer over a broad range of direction and sensor location errors.
机译:现有的鲁棒波束形成器的性能仍然会因标称转向矢量和实际转向矢量之间的偏差而降低。本文提出了一种基于时频分布的新型鲁棒宽带波束形成器,即使在存在方向和传感器位置误差的情况下,该波束形成器也可以准确地估计转向矢量。首先,它开发了一种用于宽带信号的方法,以选择源信号的单源自动源时频(TF)点。然后,将这些TF点用于获取操纵向量,而无需使用扰动的数组流形和方向信息。最后,对于估计的转向矢量和实际转向矢量之间的较小偏差,可以获得更高的输出信噪比(SINR)。仿真结果表明,所提出的算法优于其他传统的鲁棒波束成形方法,并且可以在较大的方向和传感器位置误差范围内实现接近理想波束成形器的高输出SINR。

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